Synthetic resin pipe scraper

The scraper design with a chip holding plate and lightweight structure addresses chip tangling and centrifugal force issues, ensuring consistent cutting and efficient preparation for welding synthetic resin pipes.

JP7733586B2Active Publication Date: 2025-09-03SEKISUI CHEMICAL CO LTD
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Patent Information

Application Number
JP2022008206
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-01-21
Publication Date
2025-09-03
Estimated Expiration
2042-01-21

AI Technical Summary

Technical Problem

Existing scrapers for synthetic resin pipes face issues such as chips tangling during cutting, leading to uneven cutting, and large diameters causing significant vibration and centrifugal force, resulting in inconsistent cutting quality.

Method used

A scraper design with a chip holding plate and plate member ahead of the cutting blade, which prevents the blade from riding on chips and minimizes centrifugal force, using a lightweight structure without a chip storage cover.

Benefits of technology

Prevents uneven cutting and reduces the impact of centrifugal force, ensuring consistent and efficient cutting of synthetic resin pipes, particularly polyethylene and polypropylene pipes, facilitating smooth welding to fittings.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a scraper for a synthetic resin pipe which can prevent a cutting blade from moving onto chips and can prevent occurrence of cutting irregularity, and can minimize an influence of centrifugal force applied to a body frame.SOLUTION: A scraper 1 for a synthetic resin pipe includes a body frame 2 having a cutting blade 22 arranged so as to be brought into contact with the outer peripheral surface of a synthetic resin pipe, feeding means 23 for traveling the cutting blade 22 in a circumferential direction and a pipe axial direction along the outer peripheral surface of the synthetic resin pipe, and holding means 21 for holding the synthetic resin pipe so as to cut the synthetic resin pipe, and cuts the outer peripheral surface of a connection part between the synthetic resin pipes connected using a joint while rotating the body frame 2, wherein a plate member is arranged in parallel to a pipe axial direction of the synthetic resin pipe in front of a cutting advancing direction, with respect to the cutting blade 22 directly or indirectly installed on the body frame 2.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a synthetic resin pipe scraper for scraping the outer surface of the end of a synthetic resin pipe, particularly a polyethylene pipe or polypropylene pipe, to facilitate welding prior to welding the pipe to a fitting. [Background technology]

[0002] In recent years, synthetic resin pipes such as polyethylene pipes, which are resistant to corrosion and earthquakes and have excellent workability, have come to be widely used for piping for water supply and drainage, gas, etc. The most common method for connecting this type of synthetic resin pipe is to use an electrofusion (EF) joint, which heats and melts the outer surface of the end of the synthetic resin pipe to the inner surface of the joint to join them.

[0003] When connecting and joining synthetic resin pipes using such EF fittings, a pre-processing step is required to remove any dirt or altered surface layers from the surfaces to be welded in order to ensure the quality of the joint, such as airtightness and strength. For this reason, the outer surface of the synthetic resin pipe near the end is thinly scraped (scraped) before the joining process.

[0004] A known tool for scraping is a pipe scraper tool comprising, for example, a collet member, an expansion member, a threaded rod, and a scraper blade. The collet member has an outer periphery shaped similar to the inner periphery of the cutting pipe, an inner periphery tapered toward the opening of the cutting pipe, and is divided into several pieces in the circumferential direction. The expansion member has an outer surface shaped similar to the inner periphery of the collet member, and a male thread for threading a nut into the part protruding from the collet member, and is further fitted to the collet member so as to be freely movable in the axial direction. The threaded rod protrudes by threading its threaded portion into a female thread formed in the center hole of the expansion member, and its protruding end is provided with a head shank for clamping in the spindle chuck of an electric drill. The scraper blade is attached to a blade support rod that is fixed to a threaded rod and protrudes substantially parallel to the outer periphery of the cutting pipe so as to come into contact with the outer periphery of the cutting pipe (see, for example, Patent Document 1).

[0005] In addition to the above structure, scrapers currently in general use on the market generally come with a chip storage cover to prevent the cutting blade from running over chips. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] Publication number 7-005921 Summary of the Invention [Problem to be solved by the invention]

[0007] The scraper described in Patent Document 1 has a problem in that chips get tangled in the pipe during cutting, and the cutting blade rides up on the tangled chips, causing uneven cutting. Furthermore, in addition to the structure described in Patent Document 1, scrapers that are equipped with a chip storage cover have the problem that chips get stuck between the entrance of the chip storage cover and the cutting blade, preventing the chips from being stored in the chip storage cover and causing the blade to run over the chips that overflow from the chip storage cover, making cutting impossible. Also, chips do not enter the chip storage cover properly in the first place, and just like when there is no chip storage cover, chips get tangled in the pipe during cutting, causing the cutting blade to run over the tangled chips, resulting in uneven cutting.

[0008] Furthermore, when the diameter of the synthetic resin pipe is medium to large, 75A or more, the amount of cutting increases, and the chip storage cover itself becomes large and heavy, which generates centrifugal force, causing the main frame equipped with the cutting blade to vibrate significantly, resulting in a problem of large variations in the amount of cutting.

[0009] The present invention has been made in consideration of the above circumstances, and aims to provide a scraper for synthetic resin pipes that can prevent the cutting blade from riding on chips, thereby preventing uneven cutting, and that can minimize the effect of centrifugal force acting on the main frame. [Means for solving the problem]

[0010] The present invention has the following aspects. [1] A synthetic resin pipe scraper comprising a main frame having a cutting blade arranged to contact the outer peripheral surface of a synthetic resin pipe, a feeding means for moving the cutting blade in the circumferential direction and the pipe axis direction along the outer peripheral surface of the synthetic resin pipe, and a holding means for holding the synthetic resin pipe so that it can be cut, and which rotates the main frame to cut the outer peripheral surface of the joint between the synthetic resin pipes connected using a joint, A scraper for synthetic resin pipes, in which a plate member is arranged parallel to the axial direction of the synthetic resin pipe, ahead of the cutting blade which is directly or indirectly installed on the main frame, and ahead of the cutting direction. [2] A scraper for synthetic resin pipes as described in [1], which has a block-shaped chip holding plate located forward of the cutting blade in the cutting direction. [3] A scraper for synthetic resin pipes according to [1] or [2], wherein the length of the plate member is 3 mm or more and 50 mm or less. [4] The scraper for synthetic resin pipes according to any one of [1] to [3], wherein the thickness of the plate member is 0.1 mm or more and 5 mm or less. [5] A scraper for synthetic resin pipes as described in [2], wherein the length of the chip holding plate in the cutting direction is 1 mm or more and 40 mm or less from the cutting blade. [6] A scraper for synthetic resin pipes according to [2] or [5], wherein the height of the chip holding plate is at least 1 mm and not more than the height of the main frame. [7] The scraper for synthetic resin pipes according to any one of [1] to [6], wherein the plate member is detachable. [8] The scraper for synthetic resin pipes according to any one of [1] to [7], which has a mechanism for moving the plate member up and down via an elastic body. [9] A scraper for synthetic resin pipes as described in [2], in which the chip holding plate and the plate member are shaped as a single piece that is integrated in an arc when viewed from the side. [Effects of the Invention]

[0011] According to the present invention, it is possible to provide a scraper for synthetic resin pipes, which can prevent the cutting blade from riding on chips, thereby preventing uneven cutting, and can minimize the effect of centrifugal force acting on the main body frame. [Brief explanation of the drawings]

[0012] [Figure 1] 1 is a side view, partly cut away, showing an example of a scraper for a synthetic resin pipe according to an embodiment of the present invention. FIG. [Figure 2] 1 is a side view showing an example of a scraper for synthetic resin pipes according to an embodiment of the present invention. FIG. [Figure 3] 1 is a side view showing an example of a scraper for synthetic resin pipes according to an embodiment of the present invention. FIG. [Figure 4] 1 is a side view showing an example of a scraper for synthetic resin pipes according to an embodiment of the present invention. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0013] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A best mode for carrying out a scraper for synthetic resin pipes according to an embodiment of the present invention will be described below with reference to the drawings.

[0014] [Scraper for synthetic resin pipes] Fig. 1 is a side view, partly cut away, showing an example of a scraper for synthetic resin pipes according to one embodiment of the present invention, and Fig. 2 is a side view showing an example of a scraper for synthetic resin pipes according to one embodiment of the present invention. 1 and 2, the synthetic resin pipe scraper 1 of this embodiment includes a main body frame 2. The main body frame 2 has a holding means 21 that holds a synthetic resin pipe 3 so that it can be cut, a cutting blade 22 that is disposed so as to abut against the outer circumferential surface of the held synthetic resin pipe 3, and a feeding means 23 that moves the cutting blade 22 circumferentially and axially along the outer circumferential surface of the synthetic resin pipe 3. The synthetic resin pipe scraper 1 of this embodiment cuts the outer circumferential surface of a connecting portion 31 between synthetic resin pipes 3 that are connected using a joint by rotating the main body frame 2.

[0015] The holding means 21 has a core portion 211 that can be expanded to fit the inner diameter of the synthetic resin pipe 3, and an abutment plate 212 provided on the outside of this core portion 211 is attached to the inner surface of the connecting portion 31 of the synthetic resin pipe 3, thereby holding the synthetic resin pipe 3.

[0016] Furthermore, the main body frame 2 is provided with a rotary shaft 231 that extends coaxially with the core portion 211. The feed means 23 is configured to automatically advance the cutting blade 22 as the rotary shaft 231 rotates. In the embodiment shown in Figs. 1 and 2, a connecting shaft portion 232 is provided on the outside of the main body frame 2 and is formed on an extension shaft of the rotary shaft 231, and a rotation operating jig such as an electric drill is connected to the connecting shaft portion 232, so that the rotary shaft 231 can be rotated as desired.

[0017] An arm 24 extends from the main frame 2 along the outer circumferential surface of the held synthetic resin pipe 3, parallel to the pipe axis. The cutting blade 22 is directly or indirectly attached to the main frame 2. The cutting blade 22 is provided at the tip of the arm 24. A cutting tool for thin-wall cutting is used as the cutting blade 22. A blade with a thickness of 0.2 mm is generally used as a cutting tool for thin-wall cutting, but a blade with a larger cutting amount may also be used. The protrusion of the cutting blade 22 is preferably 0.1 mm or more and 0.5 mm or less, more preferably 0.15 mm or more and 0.45 mm or less, and even more preferably 0.2 mm or more and 0.4 mm or less.

[0018] Furthermore, a chip holding plate 25 and a plate member 26 are arranged on the arm 24 ahead of the cutting blade 22 in the cutting advance direction and parallel to the pipe axial direction of the synthetic resin pipe 3. The chip holding plate 25 is arranged ahead of the cutting blade 22 in the cutting advance direction. The chip holding plate 25 is block-shaped. The plate member 26 scoops up chips after cutting, and the chip holding plate 25 holds the chips a certain distance ahead of the cutting blade 22, so that the cutting blade 22 can cut the synthetic resin pipe 3 without running over chips that have become tangled in it.

[0019] It is preferable that the chip holder plate 25 and the plate member 26 have a shape that appears to be integrated into a single member, forming an arc when viewed from the side. Specifically, a shape that appears to be integrated into a single member, forming an arc when viewed from the side, refers to a structure that tapers diagonally from the plate member to the chip holder plate 25, as shown in Fig. 3, or a shape like a slide, as shown in Fig. 4, that forms an arc when viewed from the side and appears rectangular when viewed from the front. By forming the chip holder plate 25 and the plate member 26 in this shape, the plate member 26 can penetrate under the chips entangled in the synthetic resin pipe 3 after cutting and hold the chips a certain distance forward, allowing the cutting blade 22 to cut without climbing over the chips entangled in the synthetic resin pipe 3.

[0020] It is preferable that the plate member 26 is detachable from the arm 24. By making the plate member 26 detachable, the plate member 26, which is thinner than the wall thickness of the main frame 2, can be replaced when it becomes deformed, allowing it to be used for a long period of time.

[0021] The synthetic resin pipe scraper 1 of this embodiment preferably has a mechanism for moving the plate member 26 up and down via an elastic body. By having such a mechanism, even if the end of the synthetic resin pipe 3 is cut at an angle, it can cut by following the shape of the pipe end, and even after it has run up on the synthetic resin pipe 3, the plate member 26 penetrates under the chips and holds them a certain distance forward, allowing the cutting blade 22 to cut without running up on the chips entangled in the synthetic resin pipe 3.

[0022] Examples of elastic bodies include metal springs such as coil springs and leaf springs, and non-metal springs such as polymer springs, inorganic springs, and fluid springs.

[0023] The length of the plate member 26 is preferably 3 mm to 50 mm, more preferably 4 mm to 40 mm, and even more preferably 5 mm to 30 mm. If the length of the plate member 26 is equal to or greater than the lower limit, the plate member 26 can easily enter under the chips while simultaneously retaining a certain amount of chips in front of the plate member 26. If the length of the plate member 26 is equal to or less than the upper limit, the plate member 26 is easy to handle as a tool and is less likely to deform, allowing for long-term use.

[0024] The thickness of the plate member 26 is preferably 0.1 mm to 5 mm, more preferably 0.2 mm to 4 mm, and even more preferably 0.3 mm to 3 mm. If the thickness of the plate member 26 is equal to or greater than the lower limit, the plate member 26 can have enough strength to prevent deformation when subjected to impacts during construction or when handled on-site. If the thickness of the plate member 26 is equal to or less than the upper limit, the plate member 26 can easily penetrate under chips entangled in the synthetic resin pipe 3, and by holding the chips a certain distance forward, the cutting blade 22 can cut the synthetic resin pipe 3 without climbing over the chips.

[0025] The length of the chip holder 25 in the cutting direction is preferably 1 mm to 40 mm, more preferably 3 mm to 35 mm, and even more preferably 5 mm to 30 mm, from the cutting blade 22. When the length of the chip holder 25 in the cutting direction is equal to or greater than the lower limit, chips held in front of the chip holder 25 do not enter under the cutting blade 22, and the cutting blade 22 can cut without climbing over chips entangled in the synthetic resin pipe 3. When the length of the chip holder 25 in the cutting direction is equal to or less than the upper limit, cutting can be performed without interference between the chip holder 25 and the synthetic resin pipe 3, even in cases where the cutting section is close to the branch or where the diameter changes midway, such as in a reducer.

[0026] The height of the chip holder 25 is preferably 1 mm or more but less than the height of the main frame 2, more preferably 3 mm or more but less than 40 mm, and even more preferably 5 mm or more but less than 30 mm. If the height of the chip holder 25 is equal to or greater than the lower limit, the chip holder 25 is higher than the height of the cutting blade 22, and by holding the chips at a certain height or higher, the chips held in front of the chip holder 25 do not get under the cutting blade 22, and the cutting blade 22 can cut without climbing up on chips tangled in the synthetic resin pipe 3. If the height of the chip holder 25 is equal to or less than the upper limit, the chip holder 25 does not protrude from the main body, and therefore chips do not get caught when removed from the main frame 2, improving workability during construction.

[0027] Such a synthetic resin pipe scraper 1 is preferably lightweight and robust, since it is used at the work site for fusion splicing synthetic resin pipes 3. Therefore, it is preferable that the main members constituting the main body frame 2 are made of lightweight metals such as aluminum and duralumin.

[0028] The cutting blade 22 may be a cutting tool as illustrated, a spiral rotary blade, or any other steel blade capable of thinly cutting the outer surface of the synthetic resin pipe 3.

[0029] The synthetic resin pipe scraper 1 of this embodiment does not have a chip storage cover attached, and the plate member 26 is arranged ahead of the cutting blade 22 in the cutting direction and parallel to the pipe axis direction of the synthetic resin pipe 3. Therefore, the plate member 26 scoops up chips on the surface of the synthetic resin pipe 3 at the point where the cutting blade 22 is cutting, preventing the cutting blade 22 from running over the chips and preventing uneven cutting. Furthermore, because the plate member 26 is lighter and smaller than the chip storage cover, it is possible to minimize the effect of centrifugal force acting on the main body frame 2. When using a chip storage cover, it was necessary to remove the chip storage cover when removing chips from the chip storage cover after cutting the synthetic resin pipe 3. The synthetic resin pipe scraper 1 of this embodiment does not have a chip storage cover, which eliminates the need to remove chips from the chip storage cover and improves workability.

[0030] [How to use a scraper for synthetic resin pipes] The method of using the synthetic resin pipe scraper 1 will now be described. When using the synthetic resin pipe scraper 1, first, mark an insertion line on the outer surface of the connecting portion 31 of the synthetic resin pipe 3 to be joined by the fitting. If there are scratches or dents on the surface of the synthetic resin pipe 3, remove those parts and clean the surface.

[0031] Next, the connecting portion 31 of the synthetic resin pipe 3 is set in the holding means 21 of the main frame 2 so that the arm 24 is parallel to the pipe axis direction. The core portion 211 is inserted into the synthetic resin pipe 3 and attached by expanding its diameter. The chip holding plate 25 is also positioned in the pipe axis direction so that the cutting length is up to the insertion mark line of the synthetic resin pipe 3.

[0032] Finally, a rotary operating tool such as an electric drill is connected to the connecting shaft 232, and cutting begins. This makes it easy to cut the outer circumferential surface of the connecting portion 31 of the synthetic resin pipe 3 for a predetermined cutting length, and also makes it possible to efficiently perform the subsequent connecting work of the synthetic resin pipe 3.

[0033] In this way, the synthetic resin pipe scraper 1 can easily perform cutting processing on the outer surface of the connecting portion 31 of the synthetic resin pipe 3 for a specified cutting length, and the subsequent connecting work of the synthetic resin pipe 3 can also be carried out efficiently. [Industrial Applicability]

[0034] The present invention can be suitably used to cut the outer surface of the end of a synthetic resin pipe, particularly a polyethylene pipe or polypropylene pipe, to make it easier to weld prior to fusing the pipe to a fitting. [Explanation of symbols]

[0035] 1. Scraper for synthetic resin pipes 2 Main frame 21 Holding means 211 Core 212 Contact plate 22 Cutting blade 23 Feeding means 231 Rotational Axis 232 Connecting shaft part 24 Arm 25 Chip retaining plate 26 Plate member 3 Resin pipe 31 Connecting part

Claims

1. A synthetic resin pipe scraper includes a main body frame having a cutting blade disposed so as to contact the outer peripheral surface of a synthetic resin pipe, a feeding means for moving the cutting blade in the circumferential direction and the pipe axial direction along the outer peripheral surface of the synthetic resin pipe, and a holding means for holding the synthetic resin pipe so that it can be cut, and the main body frame is rotated to cut the outer peripheral surface of a joint between the synthetic resin pipes that are connected using a joint, A block-shaped chip holding plate is provided in front of the cutting blade, which is directly or indirectly installed on the main body frame, in the cutting advance direction in the pipe axis direction of the synthetic resin pipe, A plate member is provided in front of the chip holding plate in the cutting advance direction in the pipe axial direction of the synthetic resin pipe, A scraper for synthetic resin pipes, wherein the plate member is disposed parallel to the axial direction of the synthetic resin pipe.

2. 2. The synthetic resin pipe scraper according to claim 1, wherein the length of the plate member is 3 mm or more and 50 mm or less.

3. 3. The synthetic resin pipe scraper according to claim 1, wherein the thickness of the plate member is 0.1 mm or more and 5 mm or less.

4. 2. The scraper for synthetic resin pipes according to claim 1, wherein the length of the chip retaining plate in the cutting direction is 1 mm or more and 40 mm or less from the cutting blade.

5. 5. The synthetic resin pipe scraper according to claim 1, wherein the height of the chip retaining plate is 1 mm or more and less than the height of the main body frame.

6. The scraper for synthetic resin pipes according to any one of claims 1 to 5, wherein the plate member is detachable.

7. The scraper for synthetic resin pipes according to any one of claims 1 to 6, further comprising a mechanism for moving the plate member up and down via an elastic body.

8. 2. The synthetic resin pipe scraper according to claim 1, wherein the chip retaining plate and the plate member are formed as a single member that is integrated into one piece and has an arcuate shape when viewed from the side.

Citation Information

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